The Solar Probe Plus Mission: Humanity’s First Visit to Our Star
Миссия Solar Probe Plus: первый в истории человечества визит к нашей звезде
2015-11-11
SCID: 54.1/6hyndz33
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Solar Probe Pluscoronal magnetic fieldenergetic particle accelerationsolar coronasolar wind acceleration
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Abstract (AI)
Solar Probe Plus (SPP) will be the first spacecraft to fly into the low solar corona. SPP’s main science goal is to determine the structure and dynamics of the Sun’s coronal magnetic field, understand how the solar corona and wind are heated and accelerated, and determine what processes accelerate energetic particles. Understanding these fundamental phenomena has been a top-priority science goal for over five decades, dating back to the 1958 Simpson Committee Report. The scale and concept of such a mission has been revised at intervals since that time, yet the core has always been a close encounter with the Sun. The mission design and the technology and engineering developments enable SPP to meet its science objectives to: (1) Trace the flow of energy that heats and accelerates the solar corona and solar wind; (2) Determine the structure and dynamics of the plasma and magnetic fields at the sources of the solar wind; and (3) Explore mechanisms that accelerate and transport energetic particles. The SPP mission was confirmed in March 2014 and is under development as a part of NASA’s Living with a Star (LWS) Program. SPP is scheduled for launch in mid-2018, and will perform 24 orbits over a 7-year nominal mission duration. Seven Venus gravity assists gradually reduce SPP’s perihelion from 35 solar radii ( $R_{S}$ ) for the first orbit to ${<}10~R_{S}$ for the final three orbits. In this paper we present the science, mission concept and the baseline vehicle for SPP, and examine how the mission will address the key science questions
Key Findings
1
SPP will investigate the mechanisms responsible for accelerating and transporting energetic particles.
2
Seven Venus gravity assists will reduce perihelion from 35 solar radii initially to below 10 solar radii during the final three of 24 orbits over a nominal seven-year mission.
3
Solar Probe Plus will be the first spacecraft to enter the low solar corona and directly investigate near-Sun plasma environments.
4
The mission aims to determine the structure and dynamics of coronal magnetic fields and identify how the corona and solar wind are heated and accelerated.
5
The mission’s science objectives include tracing energy flow, characterizing plasma and magnetic-field sources of the solar wind, and exploring particle acceleration processes.
Research Object
Solar Probe Plus spacecraft flying into the low solar corona
Research Subject
the structure and dynamics of the coronal magnetic field, coronal and solar-wind heating and acceleration, and energetic-particle acceleration and transport mechanisms
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2015-11-11
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